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S F Williams

Publications and source records attributed to S F Williams.

At least 37 records · Page 2Linked to original sources

Clinical applications of ex vivo cultured CD34+ cells and myeloid progenitors.

After extensive preclinical work, hematopoietic cellular therapy has recently entered a new era of clinical trials involving ex vivo cultured cells. The evolution of hematopoietic cell culture from clonogenic assays to large-scale static culture systems and bioreactors, and the identification and production of hematopoietic growth factors, have in part made this possible. In addition, murine models have demonstrated encouraging results with regard to the feasibility of infusing cultured cells, as well as to the potential efficacy. Several trials have recently been published utilizing ex vivo generated hematopoietic progenitors and myeloid progenitors, and are reviewed here. The field of clinical hematopoietic cellular therapy, while still in its infancy, is progressing rapidly, and promises to offer improved therapeutic options.

Animals↗

The role of high-dose chemotherapy in patients with Hodgkin's disease and non-Hodgkin's lymphoma.

Many patients with Hodgkin's and non-Hodgkin's lymphoma (NHL) can be cured today with combination chemotherapy and/or radiotherapy. However, for patients with suboptimal responses to initial therapy or for patients with refractory or relapsed disease, salvage therapy alone is usually inadequate to achieve long-term survival. High-dose chemotherapy (HDC) with stem cell rescue has emerged as the treatment of choice for such patients as long-term disease-free survival can be obtained in a significant number of these patients. Dose-intensive treatment has been equivocally shown effective for certain patients with Hodgkin's and NHL, whether or not chemosensitivity is shown before transplant. However, HDC has yet to consistently yield durable responses in patients with indolent NHL. Additionally, perhaps the International Prognostic Index can now help identify "high-risk" NHL patients who may benefit from investigative approaches such as frontline HDC.

Antineoplastic Combined Chemotherapy Protocols↗

High dose chemotherapy and stem cell rescue for aggressive non-Hodgkin's lymphoma: pattern of failure and implications for involved-field radiotherapy.

PURPOSE: To evaluate the pattern of failure and outcome of patients with aggressive non-Hodgkin's lymphoma (NHL) undergoing high-dose chemotherapy (HDCT) and autologous stem cell rescue (SCR) with an emphasis on the role of adjuvant involved-field radiotherapy (IFRT). METHOD AND MATERIALS: Fifty-three adult patients with aggressive NHL (46 intermediate-and 7 high-grade) underwent HDCT with SCR. All patients underwent induction chemotherapy prior to high dose intensification. Seven (13.2%) received IFRT to 10 disease sites either prior to or following HDCT. Indication included symptomatic or bulky disease, persistent disease, or to consolidate a complete response (CR). Sites of relapse were designated as old (involved prior to HDCT) or new (previously uninvolved). Median followup was 20.1 months (range, 1.2-69.3 months). RESULTS: The 4-year actuarial progression-free (PFS) and cause-specific (CSS) survivals of the entire group were 30.0 and 50.2%, respectively. Excluding toxic deaths, 24 patients (52.2%) relapsed. Sixteen (34.7%) failed in old and 15 (32.6%) in new sites. Patients treated with IFRT had a lower rate of relapse in old sites (0 vs. 41%) (p = 0.04) than patients treated with HDCT alone. Of the 141 sites present prior to induction, 127 (90.1%) were amenable to IFRT. Excluding irradiated sites, the overall 4-year local control (LC) of all amenable sites was 61.1%. Amenable sites failing to achieve a CR to induction had a poorer LC (32.0 vs. 95.1%) (p < 0.0001) than sites in CR. The 4-year LC of sites failing to achieve a CR to HDCT was 29.4%. Adjuvant IFRT improved the 4-year LC of all sites (100 vs. 61.1%) (p = 0.05), persistent sites following induction (100 vs. 32.0%) (p = 0.01) and persistent sites following HDCT (100 vs. 29.4%) (p = 0.01). Adjuvant IFRT was not associated with any untoward acute or late toxicity. CONCLUSIONS: The predominant site of relapse in patients with aggressive NHL undergoing HDCT and SCR is in sites of disease present prior to HDCT. However, the risk of relapse of prior disease sites varies greatly depending upon their response to chemotherapy. Sites at greatest risk are those failing to achieve a CR to induction regardless of their response to HDCT. IFRT is capable of reducing the high risk of relapse in these sites, the majority of which are amenable to IFRT. These results demonstrate a rationale for and possible benefit to IFRT in patients with aggressive NHL undergoing HDCT and SCR.

Adult↗

Neutrophil maturation of CD34+ cells from peripheral blood and bone marrow in serum-free culture medium with PIXY321 and granulocyte-colony stimulating factor (G-CSF).

Bone marrow (BM) or peripheral blood (PB) CD34+ cells were cultured for 12 days in serum-free culture medium containing PIXY321 (IL-3/ GM-CSF fusion protein) with or without periodic supplements of granulocyte-colony stimulating factor (G-CSF). The cultures were evaluated at day 12 for total cell proliferation (fold increase from day 0), neutrophil differentiation by flow cytometry, using dual staining with CD15-FITC and CD11b-PE, and morphology using Wright-Giemsa and granule staining. In cultures containing PIXY321 where 6000 U/ml of G-CSF was added days 0 and 6, there was no significant difference (p > or = 0.05) in cell proliferation or the percent of CD15+/CD11b+ cells when compared with cultures with PIXY321 alone. ELISA analysis showed G-CSF levels had declined by 90% after 3 days of culture. Further studies were performed to assess the benefit of supplementing lower concentrations of G-CSF (600 U/ml) at more frequent intervals. A significant increase (p < or = 0.05) in cell proliferation and percent CD15+/CD11b+ was observed when G-CSF was added on days 0, 3, 6, and 9 (every 3 days) as compared with those cultures with PIXY321 alone. CD34+ cell proliferation without G-CSF was 19.6 +/- 4.8-fold, with G-CSF added on days 0 and 6 was 28.7 +/- 6.4-fold, and with G-CSF added on days 0, 3, 6, and 9 was 45.9 +/- 10.6-fold. Percent of CD15+/CD11b+ cells was 19.0 +/- 4.6%, 38.2 +/- 7.2%, and 58.5 +/- 6.5%, respectively, in these cultures. We observed more CD15+/CD11b+ cells, myelocytes/metamyelocytes, and secondary granule staining in cultures with G-CSF added on day, 0, 3, 6, and 9 as compared with cultures with G-CSF added on days 0 and 6 or no G-CSF added. We conclude that PIXY321 and G-CSF act synergistically on the in vitro proliferation and neutrophil differentiation of BM and PB CD34+ cells and that frequent supplements of G-CSF facilitate neutrophil differentiation.

Adult↗

High-dose chemotherapy with autologous hematopoietic stem-cell support for breast cancer in North America.

PURPOSE: To identify trends in high-dose therapy with autologous hematopoietic stem-cell support (autotransplants) for breast cancer (1989 to 1995). PATIENTS AND METHODS: Analysis of patients who received autotransplants and were reported to the Autologous Blood and Marrow Transplant Registry. Between January 1, 1989 and June 30, 1995, 19,291 autotransplants were reviewed; 5,886 were for breast cancer. Main outcomes were progression-free survival (PFS) and survival. RESULTS: Between 1989 and 1995, autotransplants for breast cancer increased sixfold. After 1992, breast cancer was the most common indication for autotransplant. Significant trends included increasing use for locally advanced rather than metastatic disease (P < .00001) and use of blood-derived rather than marrow-derived stem cells (P < .00001). One-hundred-day mortality decreased from 22% to 5% (P < .0001). Three-year PFS probabilities were 65% (95% confidence intervals [Cls], 59 to 71) for stage 2 disease, and 60% (95% Cl, 53 to 67) for stage 3 disease. In metastatic breast cancer, 3-year probabilities of PFS were 7% (95% Cl, 4 to 10) for women with no response to conventional dose chemotherapy; 13% (95% Cl, 9 to 17) for those with partial response; and 32% (95% Cl, 27 to 37) for those with complete response. Eleven percent of women with stage 2/3 disease and less than 1% of those with stage 4 disease participated in national cooperative group randomized trials. CONCLUSION: Autotransplants increasingly are used to treat breast cancer. One-hundred-day mortality has decreased substantially. Three-year survival is better in women with earlier stage disease and in those who respond to pretransplant chemotherapy.

Adult↗

Immunocytochemistry and flow cytometry evaluation of human megakaryocytes in fresh samples and cultures of CD34+ cells.

Adhering platelets on the cell surface can give misleading results when doing flow cytometry analysis of platelet/megakaryocyte-specific glycoprotein (GP) antigens to enumerate megakaryocytes (MK) in mobilized peripheral blood (PB), apheresis products, or normal bone marrow (BM). For adequate quantification and characterization of human MK, we examined samples with parallel flow cytometry and immunocytochemistry. MK expression of GP IIb/IIIa (CD41a), GP Ib (CD42b), GP IIIa (CD61), CD45, CD33, and CD11b, and their light scatter properties were evaluated. Fresh samples of low density mononuclear cells (MNC) or purified CD34+ cells contained 10-45% of platelet-coated cells. Platelet-coated cells decreased dramatically after several days of incubation in a serum-free medium supplemented with stem cell factor, IL-3, IL-6, and/or GM-CSF. Between d 9-12, flow cytometry detected a distinct CD41a+ MK population, 8.3 +/- 1.3% in BM CD34 cell cultures (n = 7) and 13.1 +/- 2.1% in PB CD34 cell cultures (n = 14), comparable to immunocytochemistry data (7.8 +/- 1.9% and 16.4 +/- 2.6%, respectively). CD41a stained a higher proportion of MK than CD42b or CD61, while CD42b+ or CD61+ cells contained more morphologically mature MK than CD41a+ cells in cultures containing aplastic serum. When fluorescence emission of CD41a was plotted against forward-light scatter (FSC), subpopulations of small and large MK were observed. Such subpopulations overlapped in CD41a intensity and side-light scatter (SSC) property. Most MK co-expressed CD45 (98.8% positive) but not CD33 (80.7% negative) or CD11b (88.9% negative). Our data indicate that flow cytometry can be used effectively to identify MK. However, caution should be taken with samples containing adherent platelets.

Adult↗

Selection and expansion of peripheral blood CD34+ cells in autologous stem cell transplantation for breast cancer.

Cytopenia after high-dose chemotherapy and autologous stem cell reinfusion is a major cause of morbidity. Ex vivo cultured expansion and differentiation of CD34+ peripheral blood progenitor cells (PBPC) to neutrophil precursors may shorten the neutropenic period further. We explored the use of these ex vivo cultured PBPCs in nine patients with metastatic breast cancer. All underwent PBPC mobilization with cyclophosphamide, VP-16, and G-CSF. Subsequently, they underwent four to five apheresis procedures. One apheresis product from each patient was prepared using the Isolex 300 Magnetic Cell Separation System (Baxter Immunotherapy, Irvine, CA) to obtain CD34+ cells. These cells were then cultured in gas permeable bags containing serum-free X-VIVO 10 (BioWhittaker, Walkersville, MD) medium supplemented with 1% human serum albumin and 100 ng/mL PIXY321. At day 12 of culture the mean fold expansion was 26x with a range of 6 to 64x. One patient's cells did not expand because of a technical difficulty. The final cell product contained an average of 29.3% CD15+ neutrophil precursors with a range of 18.5% to 48.1%. The patients underwent high-dose chemotherapy with cyclophosphamide, carboplatin, and thiotepa. On day 0, the cryopreserved PBPCs were reinfused and on day +1 the 12-day cultured cells were washed, resuspended, and reinfused into eight of nine patients. One patient was not infused with cultured cells. The mean number of cultured cells reinfused was 44.6 x 10(6) cells/kg with a range of 0.8 to 156.6 x 10(6) cells/kg. No toxicity was observed after reinfusion. The eight patients have recovered absolute neutrophil counts > 500/microL on a median of 8 days (range 8 to 10 days); the median platelet transfusion independence occurred on day 10 (range 8 to 12 days) and platelet counts > 50,000/microL were achieved by day 12 (range 9 to 14) for the seven patients whose platelet counts could be determined. Expanded CD34+ selected PBPC can be obtained and safely reinfused into patients.

Adult↗

High-dose chemotherapy with autologous stem cell rescue for breast cancer: yesterday, today and tomorrow.

Metastatic breast cancer remains incurable by conventional means and is the second leading cause of all cancer deaths in women in the United States. Laboratory and clinical studies have shown chemotherapy dose intensity may be important in breast cancer therapy, and therefore clinical trials have been investigating high-dose chemotherapy (HDC) with autologous stem cell rescue (ASCR) for the past decade. Initial Phase I trials in heavily pretreated patients demonstrated good response rates but short survival times. The next generation of trials used HDC as initial treatment for metastatic breast cancer and showed improved results. Most recently, patients receive HDC after "induction" chemotherapy to minimize tumor burden prior to HDC. Results from these most recent trials are encouraging, with complete remissions (CR) achievable in at least half of patients and long-term survivors noted. An ongoing randomized trial of HDC versus conventional chemotherapy should answer whether HDC is superior to conventional chemotherapy for metastatic breast cancer. Based on encouraging data from a preliminary trial, two ongoing randomized trials are comparing HDC versus conventional chemotherapy in high-risk primary breast cancer. Technological improvements, better supportive care and experience have all contributed to decrease the morbidity and mortality of this procedure. Additionally, hospitalizations have become shorter and costs may be decreasing. This review will discuss the issues pertinent to this modality in the past and present, including chemotherapy regimens, stem cell technology and related issues, outcomes, ongoing trials and future directions for consideration.

Antineoplastic Agents↗

Large-scale selection of CD34+ peripheral blood progenitors and expansion of neutrophil precursors for clinical applications.

Hematopoietic recovery after high-dose chemotherapy is characterized by an obligate period of neutropenia of approximately 8-10 days. It is postulated that if a pool of neutrophil precursors and progenitors were expanded in vitro and reinfused, the duration of neutropenia may be substantially shortened by these cells capable of providing mature neutrophils within days of reinfusion. In this study, peripheral blood progenitor cell products were obtained from six normal donors mobilized with rhG-CSF and two patients mobilized with cyclophosphamide and rhG-CSF. CD34+ cells were isolated using the Isolex immunomagnetic bead method. A mean of 8.26 x 10(7) CD34+ cells with a mean purity of 74.5% were seeded at a concentration of 1 x 10(5)/ml into a 12 day stroma-free liquid culture using gas-permeable bags. A serum-free growth medium supplemented with PIXY321 was used. On day 7, there was a mean cellular expansion of fourfold, at which time the cells were resuspended at the initial concentration, yielding a mean culture volume of 3L (1-6 L). On day 12, there was an additional mean fold cellular expansion of 10 x, achieving an overall mean fold expansion of 41 +/- 16. Cellular characterization of the expanded cells revealed predominantly neutrophil precursors by morphology (mean 70.1%) and flow cytometric analysis. A mean of 52.3% of the expanded cells expressed CD15. Immunohistochemical staining revealed a mean of 7.1% CD41a+ megakaryocytic progenitors in the final cultured cell product. Detectable CD34+ cells were maintained only in those cultures initiated with greater than 90% CD34+ cells. Colony-forming units-granulocyte-macrophage (CFU-GM) were maintained in the 12 day culture at a level similar to the preculture number, whereas CFU mixed were depleted in all samples. On day 0, there were few CFU clusters (colonies containing fewer than 50 cells) identified, but by day 12, a mean total of 8.3 x 10(6) CFU clusters were identified. On day 12, the expanded cells were harvested and pooled using the Fenwal CS3000 Plus blood cell separator and resuspended in Plasma-Lyte-A with 1% human serum albumin. The mean harvest recovery of expanded progenitors was 91%, with a mean viability of 86%.

Adult↗

Tumor cell contamination of bone marrow harvest products: clinical consequences in a cohort of advanced-stage breast cancer patients undergoing high-dose chemotherapy.

Patients undergoing high-dose chemotherapy (HDC) with autologous stem cell rescue (ASCR) may have tumor cells inadvertently infused if their stem cell product is tumor contaminated. We used an immunocytochemical (ICC) method to analyze 31 histologically negative bone marrow (BM) specimens taken from women with advanced-stage breast cancer at the time of BM harvest before HDC. All 31 patients were treated on one of three consecutive HDC protocols and received BM or BM and peripheral stem cells (PSC) as ASCR. Six of 26 evaluable patients had ICC-detectable contaminating tumor cells in their BM harvests. These 6 patients had a trend toward decreased overall survival compared with those patients without ICC-detectable tumor cells (17 months median versus 25+ months, p = 0.11, log rank test for those patients achieving complete response, CR, from HDC). The sites of relapse in the ICC-positive and ICC-negative groups were not notably different when analyzed for new sites versus previous sites of disease. Therefore, our retrospective analysis of a small cohort of patients suggests that the infusion of tumor cells in breast cancer patients undergoing HDC may confer a poor prognosis. Relapse patterns however suggest failure both in new sites and in sites of previous disease. Additional studies in expanded patient populations are needed to explore further the role of tumor cell infusion in ASCR and the possible clinical benefits of tumor cell removal procedures.

Antineoplastic Combined Chemotherapy Protocols↗

Quantitative CD34 analysis may be used to guide peripheral blood stem cell harvests.

The duration of neutropenia and thrombocytopenia after high-dose chemotherapy has improved since the introduction of myeloid growth factors and peripheral blood progenitor cells (PBPC), yet there remains a subset of patients who have delayed hematopoietic recovery. Currently, there ar no established, reliable parameters which may be used to guide stem cell harvests. We investigated the utility of measuring harvested CD34 positive cell populations by flow cytometry. From March 1990 to July 1993, 30 women with advanced breast cancer underwent therapy with high-dose cyclophosphamide and thiotepa and stem cell rescue. Patients received either cyclophosphamide (CY) mobilized PBPC or CY/G-CSF mobilized PBPC. The number of harvested CD34+ cell and CFU-GM (colony forming units-granulocyte macrophage) were quantitated for each stem cell produce. There ar complete CD34 data for 21 patients and complete CFU-GM data for 20 patients. There was a significantly delayed neutrophil recovery in those patients reinfused with < 0.75 x 10(6) CD34+ cells/kg body weight (median days 22) compared with patients reinfused with > 0.75 x 10(6)/kg (median days 12, P = 0.0004); a similar trend was seen with platelet recovery (median 135 days vs 18 days, respectively, P = 0.002). With neutrophil recovery, there was no improvement in time to engraftment with a large number of reinfused CD34+ cells, but there was a trend towards shortened platelet recovery when the number of reinfused CD34+ cells exceeded 2.0 x 10(6)/kg (median 15 days) compared with CD34+ < 2.0 x 10(6)/kg (median 75 days, P = 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Antigens, CD↗

Source of stem cells impacts on hematopoietic recovery after high-dose chemotherapy.

The restoration of hematopoiesis after high-dose chemotherapy may be accelerated by the use of stem cells from the bone marrow (BM) or peripheral blood. Numerous reports utilizing mobilized peripheral blood progenitor cells (PBPC) for stem cell rescue have shown that PBPC are sufficient to restore hematopoiesis, but there are little data comparing the recovery among patients treated with various stem cell sources. We reviewed the clinical outcomes of 69 women at our institution who were treated for locally advanced or metastatic breast cancer with high-dose cyclophosphamide (CY) and thiotepa and autologous stem cell and growth factor support. Of the 43 patients with normal BM, 19 received BM alone and 24 received BM plus G-CSF mobilized PBPC. Of the 26 patients with evidence of metastatic disease in the BM, or evidence of fibrosis and hypocellularity, 15 received CY-mobilized PBPC and 11 received CY/G-CSF-mobilized PBPC. Of the marrow-negative patients, those receiving BM alone had significantly longer (P < 0.001) granulocyte recovery (absolute neutrophil count > 500 x 10(6)/l) and platelet recovery (platelets > 50 x 10(9)/l) compared with BM + G-CSF-mobilized PBPC. They also had significantly longer (P < 0.001) durations of antibiotic and amphotericin usage, increased transfusion requirements and longer hospitalizations. Of the marrow-positive patients, there was a slightly shortened granulocyte recovery, shortened hospital stays and lessened amphotericin usage in the patients who received CY/G-CSF-mobilized PBPC compared with the CY-mobilized patients. Although the number of harvested mononuclear cells differed significantly between the groups, this did not correlate with the time to hematopoietic recovery.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Phase I multicenter trial of interleukin 6 therapy after autologous bone marrow transplantation in advanced breast cancer.

Our purpose was to determine the maximum tolerated dosage of rhIL-6 after high-dose cytotoxic chemotherapy and autologous BMT in patients with advanced breast cancer. Twenty patients (median age 43.5 years) received either CY and thiotepa (n = 3) or CY, thiotepa and carboplatin (n = 17) for 4 days. Unpurged autologous BM was reinfused 72 h later. Daily rhIL-6 therapy began the day of marrow infusion and continued until recovery of neutrophils (> or = 1.5 x 10(9)/l) and platelets (> or = 50 x 10(9)/l) or for a maximum of 28 days at a dosage of 0.3 microgram/kg/day (n = 7), 1 microgram/kg/day (n = 6) or 3 micrograms/kg/day (n = 7). Two of the initial 4 patients given rhIL-6 at 0.3 mu/kg i.v. experienced grade 4 hyperbilirubinemia, so subsequent patients received s.c. rhIL-6. Most toxicities attributable to rhIL-6 were reversible or mild constitutional symptoms, but dose-limiting grade 4 hyperbilirubinemia also occurred in 3 of the 7 patients receiving the 3 micrograms/kg dose. At the 0.3 and 1 microgram/kg/day doses, 8 of 13 patients completed the study vs. only 2 of 7 at the 3 micrograms/kg/day dose. During rhIL-6 treatment, neutrophil recovery (> or = 500 x 10(6)/l) occurred in 12 patients and platelet recovery (> or = 20 x 10(9)/l) occurred in 6 patients, 5 of whom received the 0.3 or 1 microgram/kg/day s.c. dose. The maximal tolerated dose of rhIL-6 after autologous BMT appeared to be 1 microgram/kg/day s.c., a dose appreciably lower than the maximal tolerated dose after conventional cytotoxic therapy.

Adenocarcinoma↗

Tandem peripheral blood progenitor cell transplants as initial therapy for metastatic breast cancer.

PURPOSE: To investigate the use of two sequential courses of high-dose chemotherapy and peripheral blood progenitor cell (PBPC) transplant as initial therapy for patients with untreated metastatic breast cancer. The goal of the study was to maximize treatment intensity through the use of two non-cross-resistant regimens, each equal in intensity to that used in single transplants. METHODS: PBPC were collected after a course of granulocyte colony-stimulating factor (G-CSF) only or of cyclophosphamide, etoposide, and G-CSF. The first transplant regimen consisted of thiotepa (600 mg/m2), cyclophosphamide (6000 mg/m2), and carboplatin (800 mg/m2). After recovery from the first transplant, responding patients received a second course of therapy consisting of busulfan (16 mg/kg) and etoposide (60 mg/kg). RESULTS: Forty-four patients were enrolled. Five patients did not proceed to transplantation due to tumor progression during PBPC mobilization. Five patients achieved complete response after the first transplant, and 14 were in complete remission at the end of the therapy. Six patients remain free of disease after a median followup of 22 months (range 12-27+ months). The 2-year event-free survival for complete responders is 25.4% (standard error 14.4%). Engraftment was prompt, with a median of 8 and 13 days, respectively, to reach a neutrophil count of 500/mm3 and a platelet count of 50,000/mm3. As a result of the gastrointestinal toxicity of the first course, the median interval between transplants was 68 days. The toxicities of the second transplant course were principally hepatic and muco-cutaneous. Hepatic veno-occlusive disease occurred in 12 patients and was a contributor to the death of three. CONCLUSIONS: Rapid hematologic recovery achieved with PBPC made possible the administration of two courses of high-dose chemotherapy without compromising the intensity of either transplant regimen. The adverse effects of the second course, however, were substantially higher than predicted. The outcome of patients achieving a complete response is promising. Overall, the antitumor benefit of this approach in patients with previously untreated metastatic disease was not superior to that achieved with single transplants in patients responding to standard-dose chemotherapy.

Adult↗

Phase I trial of a genetically engineered interleukin-2 fusion toxin (DAB486IL-2) as a 6 hour intravenous infusion in patients with hematologic malignancies.

DAB486IL-2 is a recombinant fusion toxin, created by replacement of the receptor binding domain sequences of the diphtheria toxin gene with the sequences for human interleukin-2 (IL-2). It selectively binds to and intoxicates cells expressing the high-affinity IL-2 receptor. A total of 17 patients with refractory hematologic malignancies were entered in a phase I study of DAB486IL-2, administered as a 6 hour continuous intravenous infusion on days 1, 2, 8, 9, 15, and 16 of each 28 day cycle. Cohorts of 3 to 6 patients were treated with escalating doses. The starting dose was 0.1 mg/kg/day with increments of 0.1 mg/kg/day per dose level up to 0.3 mg/kg/day. Significant adverse effects included transient asymptomatic elevation of liver transaminases, hypersensitivity, anemia, thrombocytopenia, fever, and creatinine elevation. A partial response of approximately nine months duration was observed in a patient with small cell lymphocytic non-Hodgkin's lymphoma, previously refractory to high-dose chemotherapy and autologous bone marrow transplantation. The observance of antitumor activity in a patient highly refractory to chemotherapy suggests that DAB486IL-2 may have efficacy in selected patients whose malignant cells express the IL-2 receptor.

Adult↗